\begin{minipage}[t]{8in}
\begin{tabular}{ll}
AsymMatrix$<$int$>$  & AdjacencyMatrix\index{AdjacencyMatrix!AdjacencyMatrix}(const Graph *);
\end{tabular}\\

	
 \parbox[b]{2in} \ \ 
\begin{minipage}[t]{4in}Given a graph, return its adjacency matrix.  The class
	 AsymMatrix$<$T$>$ is described with the Matrix$<$T$>$ class.\end{minipage}
\end{minipage}
\vspace{0.2in}


\begin{minipage}[t]{8in}
\begin{tabular}{ll}
UBinGraph  & AdjacencyMatrix2Graph\index{AdjacencyMatrix!AdjacencyMatrix2Graph}(const Matrix$<$int$>$\&);
\end{tabular}\\

	
 \parbox[b]{2in} \ \ 
\begin{minipage}[t]{4in}Given an adjacency matrix, return a binary graph object 
	 realizing the same adjacency relationship.  Note that the
	 input matrix must be symmetric.\end{minipage}
\end{minipage}
\vspace{0.2in}
 

\begin{minipage}[t]{8in}
\begin{tabular}{ll}
DBinGraph  & AdjacencyMatrix2Digraph\index{AdjacencyMatrix!AdjacencyMatrix2Digraph}(const Matrix$<$int$>$\&);
\end{tabular}\\

	
 \parbox[b]{2in} \ \ 
\begin{minipage}[t]{4in}Given an adjacency matrix, return a directed binary graph object 
	 realizing the same adjacency relationship.\end{minipage}
\end{minipage}
\vspace{0.2in}
 

\begin{minipage}[t]{8in}
\begin{tabular}{ll}
AsymMatrix$<$int$>$  & IncidenceMatrix\index{AdjacencyMatrix!IncidenceMatrix}(const Graph *);
\end{tabular}\\

	
 \parbox[b]{2in} \ \ 
\begin{minipage}[t]{4in}Given a graph, return its incidences matrix..\end{minipage}
\end{minipage}
\vspace{0.2in}


\begin{minipage}[t]{8in}
\begin{tabular}{ll}
UBinGraph  & IncidenceMatrix2Graph\index{AdjacencyMatrix!IncidenceMatrix2Graph}(const Matrix$<$int$>$\&);
\end{tabular}\\

	
 \parbox[b]{2in} \ \ 
\begin{minipage}[t]{4in}Given an incidence matrix, return a binary graph object 
	 realizing the same adjacency relationship.\end{minipage}
\end{minipage}
\vspace{0.2in}


\begin{minipage}[t]{8in}
\begin{tabular}{ll}
AsymMatrix$<$int$>$  & LaplacianMatrix\index{AdjacencyMatrix!LaplacianMatrix}(Matrix$<$int$>$\& m);
\end{tabular}\\

	
 \parbox[b]{2in} \ \ 
\begin{minipage}[t]{4in}Returns the product of matrix m and its transpose.\end{minipage}
\end{minipage}
\vspace{0.2in}

